Sorry, classic mistake of using non-standard acronyms and expecting everyone to know them. My bad.
HCM - Horizontal Control Monument
These, in Ontario, are typically pulled from the Ministry of Natural resources website "COSINE"
http://www.gisapplication.lrc.gov.on.ca/cosineONT/Index.html?site=cosine&viewer=OntarioViewer&locale...
It's free to use (I don't believe they geofence based on your ip).
To the left would be the available horizontal control in different datums (NAD83-CSRS V6 (Epoch 2010.0), NAD83-CSRS V3 (Epoch 1997.0), NAD83-ORIG (which, to my American friends, would be NAD83(1986)), and NAD27-Toronto (where they still use NAD27 due to their extensive control network that they do not have the funds to update).
ORP - Observed Reference Point
"An ORP is a monumented point connected to a coordinate system by measurement, it therefore does not have to be the actual point of observation. It can simply be a monumented point on the survey that is connected to the actual point of observation. The actual point of observation could be on adjacent lands where we have no right to set a monument or even a point set in the ice on a frozen lake."
https://www.aols.org/sites/default/files/OPS%20Fall%202011%20Web_0.pdf
p.4 where there are some common tips on integrating cadastral surveys/plans (which is relatively new up here).
LDP - Low Distortion Projections
From a quick and dirty glance at your Wisconsin pages, they appear to be similar to LDP's. My friends to the south are miles ahead from a technical point when it comes to this. We just started requiring cadastral plans to be integrated ~10/15 years ago. The Yanks are light years ahead on this.
http://archive.amerisurv.com/PDF/TheAmericanSurveyor_Billings-GroundVersusGrid-LDPpart1_Vol10No9.pdf
http://archive.amerisurv.com/PDF/TheAmericanSurveyor_Billings-GroundVersusGrid-LDPpart2_Vol10No10.pd...
https://rplstoday.com/community/software-cad-mapping/low-distortion-projection-design/
PPP - Precise Point Positioning
You can set up your GPS base, log the static data, spit out a RINEX file, and submit it to your favorite agency to determine that point's coordinates.
Canucks usually use the following:
https://webapp.geod.nrcan.gc.ca/geod/tools-outils/ppp.php
My American friends usually use OPUS:
https://www.ngs.noaa.gov/OPUS/
Though, there are an assortment of others:
https://www.gpsworld.com/a-comparison-of-free-gps-online-post-processing-services/
We usually tie into control, log the RINEX, submit it, and use those coordinates as a check on the base's horizontal and vertical coordinates. There's a bit of juggling depending on what control you tie into. For example, if you tie into NAD83(86), you choose Epoch1997 so you can use the grid shift to convert the CSRS to NAD83(86) and check into CGVD28. If you tie into NAD83:CSRS(2010) and/or CGVD2013, you would choose Epoch2010. If you tie into NAD83:CSRS(2010) horizontally and CGVD28 vertically (don't get me started--some people do it), you would have to double submit the RINEX (ie. once for horizontal, once for vertical). Clearly, this is less than ideal but it is what it is.
I have attached an example plan (all copyright belongs to their owners and it is shared for illustration purposes only).
http://learning.aols.org/aols/Interpretive_Guide_2016.pdf
p.20 onward.
Typically, a cadastral plan in Ontario will list the following in their integration chart:
-HCM(s) tied into
-ORPs
-notes about ground distances being shown
-what coordinate system has been used
When you receive the CAD, you typically find 1 of 3 things:
-the plan has been converted to ground being scaled out by the combined scale factor (csf) from one of the stated HCMs
-the plan has been converted to ground being scaled out by the combined scale factor (csf) from one of the stated ORPs
-the plan has been converted to ground being scaled out by the combined scale factor (csf) from 0,0
This has the potential to seriously bung up a project as "ground" coordinates look the same as grid coordinates. We attempt to minimize blunders associated with this by creating project control. We could do a more complicated translation, but we usually just drop the leading digit to simplify conversion. The crews know what system the points are just by looking at the length of number. Technicians can bring the points back into the clustery "ground, but looks like grid" drawing relatively easily. GNSS data can be scaled to ground by having the Transformation tab setup with the correct scale point and csf. This only works for smaller sites (ie. 500 lot subdivisions or smaller). We do not have vertical differences like our friends in Alberta/British Columbia/Colarado/etc. so it semi-works.
To reiterate--all this is far from ideal. However, it (unfortunately) is the industry standard. I, too, hope that LDP's gain traction up here.